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June 1, 1994Journal of Clinical Investigation288 citationsOpen Access

Impaired insulin-induced sympathetic neural activation and vasodilation in skeletal muscle in obese humans.

PVPéter VollenweiderDRD RandinLTLuc Tappy

Key Points

  • To investigate whether sympathetic neural activation and vasodilatory responses in skeletal muscle are impaired during hyperinsulinemia in obese humans.
  • Measured muscle sympathetic nerve activity (MSNA) and calf blood flow in 8 lean and 8 obese subjects.

Structured PICO

Does hyperinsulinemia alter muscle sympathetic nerve activity and vasodilation differently in obese versus lean subjects?

P
Population
16 human subjects (8 lean and 8 obese)
I
Intervention
2-h hyperinsulinemic (6 pmol/kg per min) euglycemic clamp
C
Comparator
Basal state (within-subject) and comparison between lean and obese groups
O
Outcome
Muscle sympathetic nerve activity (MSNA) and calf blood flowsurrogate

Obesity is associated with increased fasting muscle sympathetic nerve activity and an impaired sympathetic and vasodilatory response to physiological hyperinsulinemia, potentially contributing to insulin resistance.

Abstract

The sympathetic nervous system is an important regulatory mechanism of both metabolic and cardiovascular function, and altered sympathetic activity may play a role in the etiology and/or complications of obesity. In lean subjects, insulin evokes sympathetic activation and vasodilation in skeletal muscle. In obese subjects such vasodilation is impaired and, in turn, may contribute to insulin resistance. To examine the relationship between sympathetic and vasodilatory responses in skeletal muscle to hyperinsulinemia, we simultaneously measured muscle sympathetic nerve activity (MSNA) and calf blood flow at basal and during a 2-h hyperinsulinemic (6 pmol/kg per min) euglycemic clamp in eight lean and eight obese subjects. The major findings of this study are twofold: obese subjects had a 2.2 times higher fasting rate of MSNA, and euglycemic hyperinsulinemia, which more than doubled MSNA and increased calf blood flow by roughly 30% in lean subjects, had only a minor vasodilatory and sympathoexcitatory effect in obese subjects. In contrast, two non-insulin-sympathetic stimuli evoked comparably large increases in MSNA in lean and obese subjects. We conclude that insulin resistance in obese subjects is associated with increased fasting MSNA and a specific impairment of sympathetic neural responsiveness to physiological hyperinsulinemia in skeletal muscle tissue.

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Cite This Study

Vollenweider et al. (1994) studied this question.

synapsesocial.com/papers/69d56c5075589c71d767cd91https://doi.org/10.1172/jci117242
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